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首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Sintering behaviour of Copper/carbon nanotube composites and their characterization
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Sintering behaviour of Copper/carbon nanotube composites and their characterization

机译:铜/碳纳米管复合材料的烧结行为及其表征

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The potential usage of Copper (Cu) is very limited, where combined mechanical and thermal properties are desirable, which can be overcome by using carbon nanotube (CNT) as a reinforcement. An attempt was made to synthesize Cu/CNT composites by varying CNT diameter and its concentration through a molecular level mixing technique followed by uniaxial compaction and conventional sintering. The sintering behaviour of Cu and Cu/CNT composites was studied to understand the influence of different parameters. The sintering duration of Copper was decreased with an increase of CNT diameter. The maximum enhancement of properties was achieved at 0.25 wt.% CNT irrespective of its diameter, where the thermal conductivity and hardness were obtained as 328 W/mK at 20-40 nm diameter CNT composites and 81.2 +/- 2.9 VHN at 40-60 nm diameter CNT composites, respectively. The conventional method of synthesize can generate the desired characteristics of composites at par with high end techniques, such as SPS. (C) 2019 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:铜(Cu)的潜在用法非常有限,其中需要组合的机械和热性能,其可以通过使用碳纳米管(CNT)作为增强件来克服。通过分子水平混合技术改变CNT直径,然后通过单轴压实和常规烧结,通过改变CNT直径和其浓度来合成Cu / CNT复合材料。研究了Cu和Cu / CNT复合材料的烧结行为,以了解不同参数的影响。随着CNT直径的增加,铜的烧结持续时间降低。性能的最大增强以0.25重量%。%CNT,无论其直径如何,在20-40nm直径的CNT复合材料中获得导热率和硬度为328W / mk,在40-60℃下为81.2 +/- 2.9 VHN NM直径CNT复合材料。传统的合成方法可以在具有高端技术(例如SP)的PAR处产生所需的复合材料特性。 (c)2019年日本粉末技术学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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